Costa Raquel, Rodrigues Ilda, Guardão Luísa, Lima Joana Quelhas, Sousa Emília, Soares Raquel, Negrão Rita
Department of Biochemistry, Faculty of Medicine of the University of Porto, Porto, Portugal.
i3S, Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto, Portugal.
Mol Nutr Food Res. 2017 Apr;61(4). doi: 10.1002/mnfr.201600488. Epub 2017 Jan 30.
Imbalance in kidney and heart neovascularization is common in type2 diabetes (T2DM) patients. Nevertheless, the mechanisms governing this angiogenic paradox have not been elucidated. Xanthohumol (XN) and 8-prenylnaringenin (8PN) beer polyphenols modulate angiogenesis, being thus targets for T2DM-related complications. Our work examined whether polyphenols consumption affects angiogenic paradox and metabolism in a T2DM mouse model.
An increase in kidney and a reduction in left ventricle (LV) microvessels of diabetic C57Bl/6 mice were observed. XN consumption reduced angiogenesis, VEGFR-2 expression/activity, VEGF-A and phosphofructokinase-2/fructose-2,6-bisphosphatase-3 enzyme expression, a metabolic marker present in endothelial tip cells in T2DM mice kidney. 8PN had opposite effects in T2DM mice LV. These XN and 8PN effects were dependent on VEGF levels as revealed by in vitro assays. These findings were accompanied by tissue and plasma reduced expression levels of VEGF-B and its receptors, VEGFR1 and neuropilin-1, by both polyphenols.
Beer polyphenols modulate T2DM angiogenic paradox in a tissue-dependent manner. We also show for the first time that both polyphenols decreased VEGF-B pathway, which is implicated in endothelial-to-tissue lipid metabolism. Altogether, the effects of these polyphenols in the crosstalk between angiogenesis and metabolism render them potent agents for novel diabetic therapeutic interventions.
肾与心脏新血管生成失衡在2型糖尿病(T2DM)患者中很常见。然而,控制这种血管生成悖论的机制尚未阐明。黄腐酚(XN)和8-异戊烯基柚皮素(8PN)等啤酒多酚可调节血管生成,因此是T2DM相关并发症的研究靶点。我们的研究探讨了摄入多酚是否会影响T2DM小鼠模型中的血管生成悖论和代谢。
观察到糖尿病C57Bl/6小鼠的肾微血管增加,左心室(LV)微血管减少。摄入XN可减少血管生成、VEGFR-2表达/活性、VEGF-A以及磷酸果糖激酶-2/果糖-2,6-二磷酸酶-3的酶表达,该酶是T2DM小鼠肾脏内皮尖端细胞中的一种代谢标志物。8PN对T2DM小鼠的左心室有相反的作用。体外实验表明,XN和8PN的这些作用依赖于VEGF水平。这些发现还伴随着两种多酚使组织和血浆中VEGF-B及其受体VEGFR1和神经纤毛蛋白-1的表达水平降低。
啤酒多酚以组织依赖的方式调节T2DM血管生成悖论。我们还首次表明,两种多酚均降低了VEGF-B通路,该通路与内皮到组织的脂质代谢有关。总之,这些多酚在血管生成与代谢相互作用中的作用使其成为新型糖尿病治疗干预的有效药物。